首页> 外文学位 >Understanding the Regulation of the Shear-Enhanced Binding of the Platelet Protein GPIbalpha and the A1 Domain of von Willebrand Factor.
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Understanding the Regulation of the Shear-Enhanced Binding of the Platelet Protein GPIbalpha and the A1 Domain of von Willebrand Factor.

机译:了解血小板蛋白GPIbalpha和von Willebrand因子的A1结构域的剪切结合的调节。

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摘要

Platelets are an integral part of the early steps of thrombus formation, particularly in areas of high shear. Thrombus formation in areas of high shear is mediated by binding between glycoprotein (GP) Ibalpha expressed on the surface of platelets as a member of the GPIb-IX-V complex and the A1 domain of von Willebrand Factor (VWF). Platelets and VWF must however be able to co-exist in the blood without interaction except in the case of injury when they muct be able to quickly and efficiently form a clot limiting blood loss. This requirement suggests the presence of a sophisticated regulatory mechanism. The GPIbalpha-A1 bond is regulated by a combination intradomain and interdomain interactions in VWF as well as by signaling events in platelets. Using protein constructs which have had different domains outside of the A1 domain deleted, shear-based assays and single force spectroscopy experiments suggest that intradomain interaction is part of an important regulatory mechanism, in which neighboring domains shield the GPIbalpha binding site on the A1 domain. In an effort to further refine our understanding of interdomain interaction and to determine the role of force induced intradomain interactions, a reliable, well characterized system for studying a large number of protein constructs was established. Implementing this system, it has been demonstrated that both application of force across the Al domain of VWF and the presence of the N-terminal linker chain, a region of VWF which links the A1 domain to the D'D3 domain are crucially responsible for GPlbalpha-A1 bond regulation. Lastly, it has been demonstrated that signaling induced by interactions with the GPIbalpha cytoplasmic tail are crucial in binding of platelets from whole blood to VWF coated surfaces, but have little influence on the behavior of washed platelets binding to A1 coated surfaces in our assays. Our increased knowledge about the regulation of platelet binding to VWF may aid in the design of therapies to treat a wide range of diseases which are caused by both unwanted increases and unwanted decreases in clot formation.
机译:血小板是血栓形成早期步骤不可或缺的一部分,尤其是在高剪切区域。高剪切区域的血栓形成是由作为GPIb-IX-V复合体成员的血小板表面表达的糖蛋白(GP)Ibalpha与von Willebrand Factor(VWF)的A1结构域之间的结合介导的。但是,血小板和VWF必须能够在血液中共存而无相互作用,除非在受伤的情况下,血小板和VWF必须能够快速而有效地形成凝块,从而限制失血。该要求表明存在复杂的监管机制。 GPIbalpha-A1键受VWF中域内和域间相互作用的结合以及血小板中信号事件的调控。使用具有在A1域之外被删除的不同域的蛋白质构建体,基于剪切的分析和单力光谱实验表明域内相互作用是重要调节机制的一部分,其中相邻域屏蔽了A1域上的GPIbalpha结合位点。为了进一步完善我们对域间相互作用的了解并确定力诱导的域内相互作用的作用,建立了可靠的,表征良好的系统来研究大量蛋白质构建体。实施该系统,已证明在VWF的Al结构域上施加力和N末端连接链的存在,将A1结构域连接到D'D3结构域的VWF区域都对GPlbalpha至关重要。 -A1债券监管。最后,已证明由与GPIbalpha胞质尾巴相互作用引起的信号传导在全血血小板与VWF包被的表面的结合中起着至关重要的作用,但在我们的测定中对洗涤后的血小板与A1包被的表面结合的行为影响很小。我们对调节血小板与VWF结合的了解增加,可能有助于设计治疗多种疾病的方法,这些疾病是由血块形成的不希望的增加和不希望的减少所引起的。

著录项

  • 作者

    Penkala, Rebecca A.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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